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Bioscience, Biotechnology, and Biochemistry|December 10, 2024
Heterologous expression and enzymological characterization of L-glutamate oxidase from the marine actinomycete Streptomyces lydicamycinicus NBRC 110027Tadao Oikawa, Kazuya YamanakaMicrobiology Resource Announcements|February 1, 2019
Draft Genome Sequence of the Most Traditional ε-Poly-l-Lysine Producer, Streptomyces albulus NBRC14147Kazuya Yamanaka, Yoshimitsu HamanoJournal of Bioscience and Bioengineering|January 12, 2020
Enhancement of metabolic flux toward ε-poly-l-lysine biosynthesis by targeted inactivation of concomitant polyene macrolide biosynthesis in Streptomyces albulusKazuya Yamanaka, Yoshimitsu Hamano, Tadao OikawaJournal of Bioscience and Bioengineering|June 15, 2026
Structure- and phylogeny-guided redirection of substrate specificity in diaminobutyric acid racemase PddB toward ornithine and lysineKazuya Yamanaka, Yudai Okuno, Tadao OikawaAngewandte Chemie (International Ed. in English)|November 11, 2015
A Peptidyl-Transesterifying Type I Thioesterase in Salinamide BiosynthesisLauren Ray, Kazuya Yamanaka, Bradley S MooreAmino Acids|February 5, 2022
First enzymological characterization of selenocysteine β-lyase from a lactic acid bacterium, Leuconostoc mesenteroidesTadao Oikawa, Kouhei Okajima, Kazuya Yamanaka, et al.Frontiers in Microbiology|June 28, 2021
Molecular and Mechanistic Characterization of PddB, the First PLP-Independent 2,4-Diaminobutyric Acid Racemase Discovered in an Actinobacterial D-Amino Acid Homopolymer BiosynthesisKazuya Yamanaka, Ryo Ozaki, Yoshimitsu Hamano, et al.Applied and Environmental Microbiology|March 22, 2015
Heterologous Production of Hyaluronic Acid in an ε-Poly-L-Lysine Producer, Streptomyces albulusTomohiro Yoshimura, Nobuyuki Shibata, Yoshimitsu Hamano, et al.Nature Chemical Biology|November 11, 2008
Epsilon-poly-L-lysine dispersity is controlled by a highly unusual nonribosomal peptide synthetaseKazuya Yamanaka, Chitose Maruyama, Hiroshi Takagi, et al.Bioorganic & Medicinal Chemistry Letters|December 12, 2023
Functional evaluation of an electrophilic focused library to identify a covalent inhibitor against intrinsically disordered circadian clock transcription factorsKazuya Yamanaka, Yoshihisa Inoue, Miki Imanishi, et al.Pageof 3